Modeling of magnetic hysteresis parameters in foraminiferal shells of the Mid-Atlantic Ridge
- Authors: Sergienko E.S.1, Janson S.Y.1, Gareev K.G.2, Kharitonskii P.V.3, Ralin A.Y.4, Sheidaev T.S.2, Setrov E.A.2
-
Affiliations:
- Saint Petersburg University
- Saint Petersburg Electrotechnical University “LETI”
- Ioffe Institute
- Far Eastern Federal University
- Issue: Vol 88, No 4 (2024)
- Pages: 609-617
- Section: Magnetic Phenomena and Smart Composite Materials
- URL: https://journals.rcsi.science/0367-6765/article/view/271447
- DOI: https://doi.org/10.31857/S0367676524040127
- EDN: https://elibrary.ru/QHTEHM
- ID: 271447
Cite item
Abstract
The composition and magnetic properties of foraminifers from bottom sediments of the Mid-Atlantic Ridge and their artificial analogues obtained by hydrothermal synthesis have been studied. The presence of magnetic hysteresis and theoretical modeling of hysteresis characteristics made it possible to assume the presence of grains of nonstoichiometric magnetite in single and low-domain states.
About the authors
E. S. Sergienko
Saint Petersburg University
Email: kggareev@etu.ru
Russian Federation, St. Petersburg, 199034
S. Y. Janson
Saint Petersburg University
Email: kggareev@etu.ru
Russian Federation, St. Petersburg, 199034
K. G. Gareev
Saint Petersburg Electrotechnical University “LETI”
Author for correspondence.
Email: kggareev@etu.ru
Russian Federation, St. Petersburg, 197022
P. V. Kharitonskii
Ioffe Institute
Email: kggareev@etu.ru
Russian Federation, St. Petersburg, 194021
A. Yu. Ralin
Far Eastern Federal University
Email: kggareev@etu.ru
Russian Federation, Vladivostok, 690922
T. S. Sheidaev
Saint Petersburg Electrotechnical University “LETI”
Email: kggareev@etu.ru
Russian Federation, St. Petersburg, 197022
E. A. Setrov
Saint Petersburg Electrotechnical University “LETI”
Email: kggareev@etu.ru
Russian Federation, St. Petersburg, 197022
References
- Maliszewska I., Kocek D., Wanarska E. // Physicochem. Probl. Miner. Process. 2020. V. 56. No. 6. P. 244.
- Shi R.J., Lang J.Q., Wang T., Zhou N., Ma M.G. // Front. Bioeng. Biotechnol. 2022. No. 10. Art. No 937266
- Magnabosco G., Hauzer H., Fermani S. et al. // Mater Horizons. 2019. No. 6. P. 1862.
- Takano H., Manabe E., Hirano M., Okazaki M. // Appl. Biochem. Biotech. 1993. No. 40. P. 239.
- Moheimani N.R., Web J.P., Borowitzka M.A. // Algal Res. 2012. No. 1. P. 120.
- Titelboim D., Sadekov A., Blumenfeld M. et al. // Ecol. Indic. 2021. V. 120. Art. No. 106931.
- Dorozhkin S.V. // Biomatter. 2011. No. 1. P. 3.
- Pawlowski J., Majewski W. // J. Foraminifer Res. 2011. V. 41. No. 1. P. 3.
- Yang H., Peng X., Gooday A.J. et al. // Geochem. Persp. Lett. 2022. No. 21. P. 23.
- Kirshvink J.L. Magnetite biomineralization and magnetoreception in organisms. A new biomagnetism. N.Y.: Plenum Press, 1985. 287 p.
- Габлина И.Ф., Демина Л.Л., Дмитренко О.Б. и др. // Океанология. 2011. Т. 51. № 3. С. 505.
- Габлина И.Ф., Дмитренко О.Б., Хусид Т.А., Либина Н.В. // Литология и полезные ископаемые. 2019. № 6. С. 592.
- Хусид Т.А., Оськина Н.С., Лукашина Н.П. и др. // Стратиграфия. Геол. корр. 2018. Т. 26. № 1. С. 115.
- Габлина И.Ф., Добрецова И.Г., Попова Е.А. и др. // Литология и полезн. ископ. 2021. № 2. С. 101.
- Sergienko E., Janson S., Kharitonskii P. et al. // In: Biogenic-abiogenic interactions in natural and anthropogenic systems. Chapter 9. Cham: Springer, 2023.
- Pierre S., Gysi A.P., Monecke T. // Geofluids. 2018. V. 2018. Art. No. 1389379.
- Kennedy C.B., Scott S.D., Ferris F.G. // Geomicrobiol. J. 2003. V. 20. No. 3. P. 199.
- Ding K., Seyfried W.E. Jr., Zhang Z. et al. // Earth Planet. Sci. Lett. 2005. V. 237. No. 1–2. P. 167.
- Agarwal D.K., Palayil J.K. // Sci. Reports. 2022. V. 12. No. 1. Art. No. 6811.
- Olin M., Anttila T., Dal Maso M. // Chem. Phys. 2016. V. 16. P. 7067.
- Fujihara A., Tanimoto S., Yamamoto H., Ohtsuki T. // J. Phys. Soc. Japan. 2018. V. 87. Art. No. 034001.
- Kharitonskii P., Bobrov N., Gareev K. et al. // J. Magn. Magn. Mat. 2022. V. 553. Art. No. 169279.
- Dunlop D.J. // J. Geophys. Res. 1973. V. 78 P. 1780.
- Butler R.F., Banerjee S.К. // J. Geophys. Res. 1975. V. 80. P. 4049.
- Мoskowitz В., Banerjee S.К. // IEEE Trans. Magn. 1979. V. 15. No. 5. P. 1241.
- Nagy L., Williams W., Tauxe L., Muxworthy A.R. // Geochem. Geophys. Geosyst. 2019. V. 20. No. 6. P. 2907.
- Kharitonskii P.V., Gareev K.G., Ionin S.A. et al. // J. Magn. 2015. V. 20. P. 221.
- Харитонский П.В. // ФТТ. 1997. Т. 39. № 1. С. 185.
- Kharitonskii P., Kirillova S., Gareev K. et al. // IEEE Trans. Magn. 2020. V. 56. Art. No. 7200209.
- Харитонский П.В., Костеров А.А., Гурылев А.К. и др. // ФТТ. 2020. Т. 62. № 9. С. 1527; Kharitonskii P.V., Kosterov A.A., Gurylev A.K. et al. // Phys. Solid State. 2020. V. 62. P. 1691.
- Альмиев А.С., Ралин А.Ю., Харитонский П.В. // ФММ. 1994. Т. 78. № 1. С. 28.
- Roberts A.P., Almeida T.P., Church N.S. et al. // J. Geophys. Res. Solid Earth. 2017. V. 122. P. 9534.
- Starowicz M., Starowicz P., Żukrowski J. et al. // J. Nanopart. Res. 2011. V. 13. P. 7167.
- Roberts A.P., Tauxe L., Heslop D. et al. // J. Geophys. Res. Solid Earth. 2018. V. 123. P. 2618.
- Kharitonskii P., Zolotov N., Kirillova S. et al. // Chin. J. Phys. 2022. V. 78. P. 271.
- Dunlop D.J., Özdemir Ö. Rock magnetism: fundamentals and frontiers. Cambidge, UK: Cambridge University Press, 1997. 573 p.
Supplementary files
